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Advanced Fibrous Composite Materials For Ballistic Protection Xiaogang Chen Editor

  • SKU: BELL-5439096
Advanced Fibrous Composite Materials For Ballistic Protection Xiaogang Chen Editor
$ 31.00 $ 45.00 (-31%)

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Advanced Fibrous Composite Materials For Ballistic Protection Xiaogang Chen Editor instant download after payment.

Publisher: Elsevier Ltd.
File Extension: PDF
File size: 21.68 MB
Pages: 550
Author: Xiaogang Chen (editor)
ISBN: 9781782424611, 178242461X
Language: English
Year: 2016
Edition:
Volume: 66

Product desciption

Advanced Fibrous Composite Materials For Ballistic Protection Xiaogang Chen Editor by Xiaogang Chen (editor) 9781782424611, 178242461X instant download after payment.

Advanced Fibrous Composite Materials for Ballistic Protection provides the latest information on ballistic protection, a topic that remains an important issue in modern times due to ever increasing threats coming from regional conflicts, terrorism, and anti-social behavior.

The basic requirements for ballistic protection equipment are first and foremost, the prevention of a projectile from perforating, the reduction of blunt trauma to the human body caused by ballistic impact, the necessity that they are thermal and provide moisture comfort, and that they are lightweight and flexible to guarantee wearer’s mobility.

The main aim of this book is to present some of the most recent developments in the design and engineering of woven fabrics and their use as layering materials to form composite structures for ballistic personal protection. Chapter topics include High Performance Ballistic Fibres, Ultra-High Molecular Weight Polyethylene (UHMWPE), Ballistic Damage of Hybrid Composite Materials, Analysis of Ballistic Fabrics and Layered Composite Materials, and Multi-Scale Modeling of Polymeric Composite Materials for Ballistic Protection.

  • Contributions from leading experts in the field
  • Cutting edge developments on the engineering of ballistic materials
  • Comprehensive analysis of the development and uses of advanced fibrous composite materials

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